Han M, Pearson JT, Wang Y, Winters D, Soto M, Rock DA, Rock BM (2017) Immunoaffinity
capture coupled with capillary electrophoresis-mass spectrometry to study therapeutic protein
stability in vivo. Anal Biochem 539:118–126
Harstad RK, Johnson AC, Weisenberger MM, Bowser MT (2016) Capillary electrophoresis. Anal
Chem 88(1):299–319
Helander A, Wielders JP, Stroet R, Bergstrom JP (2005) Comparison of HPLC and capillary
electrophoresis for confirmatory testing of the alcohol misuse marker carbohydrate-deficient
transferrin. Clin Chem 51(8):1528–1531
Huang HY, Chiu CW, Chen YC, Yeh JM (2005) Comparison of microemulsion electro kinetic
chromatography and micellar electro kinetic chromatography as methods for the analysis of ten
benzophenones. Electrophoresis 26(5):895–902
Huang Y, Jansen O, Frédérich M, Mouithys-Mickalad A, Nys G, Servais AC, Crommen J,
Jiang Z, Fillet M (2019) Capillary electrophoresis, high-performance liquid chromatography,
and thin-layer chromatography analyses of phenolic compounds from rapeseed plants and
evaluation of their antioxidant activity. J Sep Sci 42(2):609–618
Issaadi HM, Hunyadi A, Németh K (2017) Capillary electrophoresis study on the base-catalyzed
formation of bioactive oxidized metabolites of 20-hydroxyecdysone. J Pharm Biomed
146:188–194
Jones C, Hatier JH, Cao M, Fraser K, Rasmussen S (2018) Metabolomics of plant
phosphorus-starvation response. Ann Plant Rev Online 15:217–236
Jorge TF, Tohge T, Wendenburg R, Ramalho JC, Lidon FC, Ribeiro-Barros AI, Fernie AR,
António C (2019) Salt-stress secondary metabolite signatures involved in the ability of
Casuarina glauca to mitigate oxidative stress. Environ Exp Bot 166:103808–103816
Junger AS, de Jesus FF, Fracassi da Silva JA, Daniel D, de Jesus DP (2019) A simple and fast
method for determination of benzocaine and lidocaine in pharmaceutical formulations by
capillary electrophoresis with spectrophotometric detection. SSC Plus 2(11):422–427
Kelley ZD, Rogers DT, Littleton JM, Lynn BC (2019) Microfluidic capillary zone electrophoresis
mass spectrometry analysis of alkaloids in Lobelia cardinalis transgenic and mutant plant cell
cultures. Electrophoresis 40(22):2921–2928
Kim HK, Verpoorte R (2010) Sample preparation for plant metabolomics phytochemical analysis.
Int J Plant Chem Biochem Tech 21(1):4–13
Kolrep F, Schmidt R, Mähnert E, Gehling M, Preiss-Weigert A (2019) Development of an
HPLC-MS/MS multi-method for the detection of sesquiterpene lactones and polyphenols
occurring in Arnica plant materials. Planta Med 85(18):8–12
Lai EP, Dabek-Zlotorzynska E (1999) Separation of theophylline, caffeine and related drugs by
normal-phase capillary electro chromatography. Electrophoresis 20(12):2366–2372
Lee BL, Ong CN (2000) Comparative analysis of tea catechins and theaflavins by
high-performance liquid chromatography and capillary electrophoresis. J Chromatogr A 881
(1):439–447
Li Y, Liu H, Ji X, Li J (2000) Optimized separation of pharmacologically active anthraquinone in
Rhubarb by capillary electro chromatography. Electrophoresis 21(15):3109–3115
Li Y, Shrestha B, Vertes A (2008) Atmospheric pressure infrared MALDI imaging mass
spectrometry for plant metabolomics. Anal Chem 80(2):407–420
Lima NM, Silveira RS, Ramos RR, Santos VN, Nascimento MP, Andrade APT, Carli MO,
Almeida MV (2019) Bioactivity and dereplication of phenolic compounds in medicinal plants.
Int J Pharm Sci Invent 11(3):105–110
Lu G, Crihfield CL, Gattu S, Veltri LM, Holland LA (2018) Capillary electrophoresis separations
of glycan’s. Chem Rev 118(17):7867–7885
Lurie IS, Meyers RP, Conver TS (1998) Capillary electro chromatography of cannabinoids. Anal
Chem 15:3255–32260
Mandal SC, Mandal V, Das AK (2015) Essentials of botanical extraction: principles and
applications. Academic press, pp 23–55
306
D. Pal and S. Mukherjee
capture coupled with capillary electrophoresis-mass spectrometry to study therapeutic protein
stability in vivo. Anal Biochem 539:118–126
Harstad RK, Johnson AC, Weisenberger MM, Bowser MT (2016) Capillary electrophoresis. Anal
Chem 88(1):299–319
Helander A, Wielders JP, Stroet R, Bergstrom JP (2005) Comparison of HPLC and capillary
electrophoresis for confirmatory testing of the alcohol misuse marker carbohydrate-deficient
transferrin. Clin Chem 51(8):1528–1531
Huang HY, Chiu CW, Chen YC, Yeh JM (2005) Comparison of microemulsion electro kinetic
chromatography and micellar electro kinetic chromatography as methods for the analysis of ten
benzophenones. Electrophoresis 26(5):895–902
Huang Y, Jansen O, Frédérich M, Mouithys-Mickalad A, Nys G, Servais AC, Crommen J,
Jiang Z, Fillet M (2019) Capillary electrophoresis, high-performance liquid chromatography,
and thin-layer chromatography analyses of phenolic compounds from rapeseed plants and
evaluation of their antioxidant activity. J Sep Sci 42(2):609–618
Issaadi HM, Hunyadi A, Németh K (2017) Capillary electrophoresis study on the base-catalyzed
formation of bioactive oxidized metabolites of 20-hydroxyecdysone. J Pharm Biomed
146:188–194
Jones C, Hatier JH, Cao M, Fraser K, Rasmussen S (2018) Metabolomics of plant
phosphorus-starvation response. Ann Plant Rev Online 15:217–236
Jorge TF, Tohge T, Wendenburg R, Ramalho JC, Lidon FC, Ribeiro-Barros AI, Fernie AR,
António C (2019) Salt-stress secondary metabolite signatures involved in the ability of
Casuarina glauca to mitigate oxidative stress. Environ Exp Bot 166:103808–103816
Junger AS, de Jesus FF, Fracassi da Silva JA, Daniel D, de Jesus DP (2019) A simple and fast
method for determination of benzocaine and lidocaine in pharmaceutical formulations by
capillary electrophoresis with spectrophotometric detection. SSC Plus 2(11):422–427
Kelley ZD, Rogers DT, Littleton JM, Lynn BC (2019) Microfluidic capillary zone electrophoresis
mass spectrometry analysis of alkaloids in Lobelia cardinalis transgenic and mutant plant cell
cultures. Electrophoresis 40(22):2921–2928
Kim HK, Verpoorte R (2010) Sample preparation for plant metabolomics phytochemical analysis.
Int J Plant Chem Biochem Tech 21(1):4–13
Kolrep F, Schmidt R, Mähnert E, Gehling M, Preiss-Weigert A (2019) Development of an
HPLC-MS/MS multi-method for the detection of sesquiterpene lactones and polyphenols
occurring in Arnica plant materials. Planta Med 85(18):8–12
Lai EP, Dabek-Zlotorzynska E (1999) Separation of theophylline, caffeine and related drugs by
normal-phase capillary electro chromatography. Electrophoresis 20(12):2366–2372
Lee BL, Ong CN (2000) Comparative analysis of tea catechins and theaflavins by
high-performance liquid chromatography and capillary electrophoresis. J Chromatogr A 881
(1):439–447
Li Y, Liu H, Ji X, Li J (2000) Optimized separation of pharmacologically active anthraquinone in
Rhubarb by capillary electro chromatography. Electrophoresis 21(15):3109–3115
Li Y, Shrestha B, Vertes A (2008) Atmospheric pressure infrared MALDI imaging mass
spectrometry for plant metabolomics. Anal Chem 80(2):407–420
Lima NM, Silveira RS, Ramos RR, Santos VN, Nascimento MP, Andrade APT, Carli MO,
Almeida MV (2019) Bioactivity and dereplication of phenolic compounds in medicinal plants.
Int J Pharm Sci Invent 11(3):105–110
Lu G, Crihfield CL, Gattu S, Veltri LM, Holland LA (2018) Capillary electrophoresis separations
of glycan’s. Chem Rev 118(17):7867–7885
Lurie IS, Meyers RP, Conver TS (1998) Capillary electro chromatography of cannabinoids. Anal
Chem 15:3255–32260
Mandal SC, Mandal V, Das AK (2015) Essentials of botanical extraction: principles and
applications. Academic press, pp 23–55
306
D. Pal and S. Mukherjee
